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Q.The following pedigree chart shows the inheritance of a genetic disorder up to three generations of a family. Observe the chart and answer the questions that follow. [Figure: pedigree chart — Generation I: 'B' (unaffected female) × 'A' (affected male); Generation II: 'C' (female), 'D' (female), 'E' (affected male) × 'F' (female); Generation III: 'G' (female), 'H' (female), 'I' (affected male)]

(i) Is the disease sex-linked or autosomal as per the chart ? Give reasons in support of your answer.
(ii) Is it a recessive or a dominant disorder ?
(iii) Write the genotypes of the individuals 'C', 'D' and 'H'.
(iv)
(a) If the female 'D' marries a normal man, what will be the probability of their daughter being a sufferer of this disease ?
(OR)
(iv)
(b) If the mother 'B' is a carrier of the disease, what will be the probability of their daughter being a sufferer of this disease ?
CBSECBSE Class XII Board 2023Subjective· 4mImportance★★★★★
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The pedigree shows an X-linked recessive disorder (only males affected, passed through carrier females). (i) sex-linked; (ii) recessive; (iii) C, D, H are carriers XᴬXᵃ; Part (a) (iv)(a): D × normal man → affected daughter probability = 0. Part (b) (iv)(b): carrier B × affected A → affected daughter probability = 1/2 (50%).

Reading the chart: in Generation I an affected male A marries an unaffected female B; their children (Gen II) are daughters C and D (unaffected) and an affected son E. E marries an unaffected female F, and their children (Gen III) are daughters G and H (unaffected) and an affected son I. Let Xᴬ be the normal allele and Xᵃ the disease-causing allele.

Part (a)

  1. Sex-linked or autosomal? The disorder is X-linked (sex-linked) recessive. The reasons visible in the pedigree: only males are affected in every generation; affected sons (E, I) are born to phenotypically normal mothers who must therefore be carriers; and the trait shows criss-cross inheritance — an affected father passes his Xᵃ to all his daughters, who become unaffected carriers, and the disease reappears in their sons. No female is affected, which is typical of an X-linked recessive trait. (Note that E being affected is not father-to-son X transmission — E receives his Y from A and his single X, bearing Xᵃ, from the carrier mother B.)
  2. Recessive or dominant? It is recessive. Affected individuals arise from unaffected (carrier) mothers, so the allele is expressed only when it is not masked by a normal allele. In males a single Xᵃ (hemizygous) is enough to cause the disease, so males are affected far more often than females.
  3. Genotypes of C, D and H. Each is an unaffected daughter of an affected father (XᵃY), so each necessarily inherits Xᵃ from her father and a normal Xᴬ from her carrier mother:
  • C = XᴬXᵃ (carrier)
  • D = XᴬXᵃ (carrier)
  • H = XᴬXᵃ (carrier)

(iv)(a) If D marries a normal man. D is a carrier XᴬXᵃ; a normal man is XᴬY.

XᴬXᵃ × XᴬY …

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